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通过自洽性改进开壳层分子的微扰理论

Improving Perturbation Theory for Open-Shell Molecules via Self-Consistency.

作者信息

Tran Lan Nguyen

机构信息

Ho Chi Minh City Institute of Physics, Vietnam Academy of Science and Technology (VAST), Ho Chi Minh City 700000, Vietnam.

出版信息

J Phys Chem A. 2021 Oct 21;125(41):9242-9250. doi: 10.1021/acs.jpca.1c06559. Epub 2021 Oct 12.

Abstract

We present an extension of our one-body Møller-Plesset second-order perturbation (OBMP2) method for open-shell systems. We derived the OBMP2 Hamiltonian through the canonical transformation followed by the cumulant approximation to reduce many-body operators into one-body ones. The resulting Hamiltonian consists of an uncorrelated Fock (unperturbed Hamiltonian) and a one-body correlation potential (perturbed Hamiltonian) composed of only double excitations. Molecular orbitals and associated energy levels are then relaxed via self-consistency, similar to Hartree-Fock, in the presence of the correlation at the MP2 level. We demonstrate the OBMP2 performance by considering two examples well-known for requiring orbital optimization: bond breaking and isotropic hyperfine coupling constants. In contrast to noniterative MP2, we show that OBMP2 can yield a smooth transition through the unrestriction point and accurately predict isotropic hyperfine coupling constants.

摘要

我们展示了一种用于开壳层体系的单粒子莫勒-普列斯二阶微扰(OBMP2)方法的扩展。我们通过正则变换,随后采用累积量近似,将多体算符简化为单粒子算符,从而推导出OBMP2哈密顿量。所得的哈密顿量由一个无关联的福克(未微扰哈密顿量)和一个仅由双激发组成的单粒子关联势(微扰哈密顿量)构成。然后,分子轨道和相关能级在MP2水平的关联存在下,通过自洽过程进行弛豫,这与哈特里-福克方法类似。我们通过考虑两个以需要轨道优化而闻名的例子来展示OBMP2的性能:键断裂和各向同性超精细耦合常数。与非迭代MP2不同,我们表明OBMP2可以在非限制点处产生平滑过渡,并准确预测各向同性超精细耦合常数。

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